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Fabrication and mechanical properties of knitted dissimilar polymeric materials with movable cross-links

机译:制造和针织机械性能不同的高分子材料和活动交叉连接

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Bulk polymerization of liquid main chain monomers in the presence of a linear polymer bearing acetylated γ-cyclodextrin (TAcγCD) (primary polymer) results in composite materials consisting of dissimilar polymer chains, hereinafter called the designs of movable cross-network elastomer knitting dissimilar polymers (KP elastomers). The post polymerized chains (secondary polymer) penetrate cavities in the TAcγCD units and form movable cross-links that connect between the primary and secondary polymers. The KP elastomers successfully improve the mechanical properties based on two key design components. One is a long movable range. The secondary polymers easily move in the TAcγCD cavities on the primary polymers due to the lack of a chemical cross-linker between the primary and secondary polymers. Thus, the KP elastomers exhibit high toughness because the movable cross-links are not fixed, which results in effective stress dispersion. The other is the synergistic effect of the multiphase structure. The network designs of the KP elastomers enable composite materials with movable cross-links that can even connect immiscible polymers, namely, poly(ethyl acrylate) (PEA) and polystyrene (PS). The obtained materials contain a three-phase structure: PEA, PS, and a mixed phase. The synergistic effect of the three-phase structure simultaneously improves the toughness and stiffness.
机译:散装液体主链单体的聚合在一个线性聚合物轴承乙酰化γ环糊精(TAcγCD)(初选在复合材料聚合物)结果不同的聚合物链组成的,以下简称活动的设计交叉网络弹性体编织不同的聚合物(KP弹性体)。链(次级聚合物)穿透空腔TAcγCD单位和活动交叉连接形式中小学之间的连接聚合物。基于两个关键的机械性能设计组件。次级聚合物容易移动的TAcγCD蛀牙在主聚合物由于缺乏主之间的化学交联和第二聚合物。表现出高韧性,因为活动交叉连接不固定,导致有效应力分散。多相结构的协同效应。KP弹性体使的网络设计复合材料与可移动的交叉连接甚至可以连接非混相聚合物,即聚丙烯酸乙酯(豌豆)和聚苯乙烯(PS)。获得的材料包含一个三相结构:豌豆、PS和混合阶段。三相结构的协同效应同时改善了韧性和刚度。

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